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首页> 外文期刊>ACS applied materials & interfaces >Solution-Processed Blue/Deep Blue and White Phosphorescent Organic Light-Emitting Diodes (PhOLEDs) Hosted by a Polysiloxane Derivative with Pendant mCP (1,3-bis(9-carbazolyl)benzene)
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Solution-Processed Blue/Deep Blue and White Phosphorescent Organic Light-Emitting Diodes (PhOLEDs) Hosted by a Polysiloxane Derivative with Pendant mCP (1,3-bis(9-carbazolyl)benzene)

机译:溶液加工的蓝色/深蓝色和白色磷光有机发光二极管(PhOLED),由带有mCP侧链的聚硅氧烷衍生物(1,3-双(9-咔唑基)苯)托管

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摘要

The synthesis and characterization is reported of an efficient polysiloxane derivative containing the 1,3-bis(9-carbazolyl)benzene (mCP) moiety as a pendant unit on the polysiloxane backbone. In comparison with mCP, the mCP-polysiloxane hybrid (PmCPSi) has significantly improved thermal and morphological stabilities with a high decomposition temperature (T-d = 523 degrees C) and glass transition temperature (T-g = 194 degrees C). The silicon oxygen linkage of PmCPSi prevents intermolecular pi-stacking and ensures a high triplet energy level (E-T = 3.0 eV). Using PmCPSi as a host, blue phosphorescent organic light emitting devices (PhO-LEDs) effectively confine triplet excitons, with efficient energy transfer to the guest emitter and a relatively low turn-on voltage of 5.8 V. A maximum external quantum efficiency of 9.24% and maximum current efficiency of 18.93 cd/A are obtained. These values are higher than for directly analogous poly(vinylcarbazole) (PVK) based devices (6.76%, 12.29 cd/A). Good color stability over a range of operating voltages is observed. A two-component "warm-white" device with a maximum current efficiency of 10.4 cd/A is obtained using a blend of blue and orange phosphorescent emitters as dopants in PmCPSi host. These results demonstrate that well-designed polysiloxane derivatives are highly efficient hosts suitable for low-cost solution-processed PhOLEDs.
机译:报道了一种有效的聚硅氧烷衍生物的合成和表征,该衍生物含有1,3-双(9-咔唑基)苯(mCP)部分作为聚硅氧烷主链上的侧基。与mCP相比,mCP-聚硅氧烷杂化物(PmCPSi)具有高的分解温度(T-d = 523摄氏度)和玻璃化转变温度(T-g = 194摄氏度),具有显着改善的热和形态稳定性。 PmCPSi的硅氧键防止分子间pi堆积,并确保高三重态能级(E-T = 3.0 eV)。使用PmCPSi作为主体,蓝色磷光有机发光器件(PhO-LED)有效地限制了三重态激子,将能量有效地转移到了客体发射极,并且开启电压相对较低,为5.8V。最大外部量子效率为9.24%获得的最大电流效率为18.93 cd / A。这些值高于直接类似的基于聚(乙烯基咔唑)(PVK)的设备(6.76%,12.29 cd / A)。在一定的工作电压范围内观察到良好的颜色稳定性。使用蓝色和橙色磷光发射体的混合物作为PmCPSi主体中的掺杂剂,可以获得最大电流效率为10.4 cd / A的两组分“暖白”器件。这些结果表明,精心设计的聚硅氧烷衍生物是适用于低成本溶液加工PhOLED的高效主体。

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